Page 160 - เชื้อเพลิงชีวภาพและชีวเคมีภัณฑ์โดยจุลินทรีย์
P. 160

122
 Parra-Orobio B.A., Angulo-Mosquera L.S., Loaiza-Gualtero J.S., Torres-López W.A., Torres- Lozada P. Inoculum mixture optimization as strategy for to improve the anaerobic digestion of food waste for the methane production. J Environ Chem Eng 2018; 6: 1529–1535.
Pattra S., Sangyoka S., Boonmee M., Reungsang A. Bio-hydrogen production from the fermentation of sugarcane bagasse hydrolysate by Clostridium butyricum. Int J Hydrogen Energy 2008; 33: 5256–5265.
Plangklang P., Reungsang A., Pattra S. Enhanced bio-hydrogen production from sugarcane juice by immobilized Clostridium butyricum on sugarcane bagasse. Int J Hydrogen Energy 2012; 37: 15525–15532.
Pohorelic B.K.J., Voordouw J.K., Lojou E., Dolla A., Harder J., Voordouw G. Effects of deletion of genes encoding Fe-only hydrogenase of Desulfovibrio vulgaris hildenborough on hydrogen and lactate metabolism. J Bacteriol 2002; 184: 679–686.
Prabhu M.S., Mutnuri S. Anaerobic co-digestion of sewage sludge and food waste. Waste Manag Res 2016; 34: 307–315.
Punsuvon P., Anpanurak W., Vaithanomsat P., Tungkananuruk N. Fractionation of chemical components of oil palm trunk by steam explosion. The 31st Congress on Science and Technology of Thailand, Suranaree University, Thailand; 2005.
Rao M.S., Singh S.P. Bioenergy conversion studies of organic fraction of MSW: Kinetic studies and gas yield-organic loading relationships for process optimisation. Bioresour Technol 2004; 95: 173–185.
Ren N., Wang A., Gao L., Xin L., Lee D.J., Su A. Bioaugmented hydrogen production from carboxymethyl cellulose and partially delignified corn stalks using isolated cultures. Int J Hydrogen Energy 2008; 33: 5250–5255.


























































































   158   159   160   161   162